Title :
Vision based Hazard detection and obstacle Avoidance for planetary landing
Author :
Mahmood, W. ; Shah, S.
Author_Institution :
Satellite R&D Center, Karachi, Pakistan
Abstract :
Current lunar and planetary missions aim for pinpoint landing accuracy. Landing a set of science instruments at the edge of a particular crater or critical life-supporting supplies in proximity of a lunar outpost is not possible with the kilometer level precision of past. To achieve this level of precise landing, accurate identification of potential hazards (like craters, boulders, steep slopes, etc.) is necessary. In this paper, a robust algorithm for autonomous hazard detection and avoidance (HDA) for a low cost, pinpoint planetary lander, Magnolia-1 is proposed. The algorithm requires no input from classical inertial sensors. The hazard assessment and navigation is done purely by using imaging camera. The primary algorithm incorporates different functions which include (a) Feature selection and hazard identification, (b) Feature transformation and hazard mapping, (c) Safe site selection and (d) Site tracking and retargeting. Implementation of each functional block and simulation results for the algorithm are presented in this paper.
Keywords :
aircraft landing guidance; collision avoidance; computer vision; feature extraction; object detection; space vehicles; terrain mapping; Magnolia-1; autonomous hazard detection and avoidance; feature selection; feature transformation; hazard assessment; hazard identification; hazard mapping; hazard navigation; imaging camera; lunar mission; obstacle avoidance; pinpoint landing accuracy; pinpoint planetary lander; planetary landing; planetary mission; safe site selection; site retargeting; site tracking; vision based hazard detection; Circuit noise; Clocks; Consumer electronics; Hazards; Jitter; Phase frequency detector; Phase locked loops; Random access memory; Robustness; Streaming media; Autonomous navigation; Guidance; Obstacle avoidance; Pin-point Landers; Vision based algorithm;
Conference_Titel :
Nonlinear Dynamics and Synchronization, 2009. INDS '09. 2nd International Workshop on
Conference_Location :
Klagenfurt
Print_ISBN :
978-1-4244-3844-0
DOI :
10.1109/INDS.2009.5227995